Explore performance details, construction highlights, applications, and technical information in one clear overview.
The S5-5-B3-32 - G5210732 - S5 Tubular Photoelectric Sensors is a industrial product from Datasensing. The documented values above identify the exact configuration and are the basis for technical selection and system integration.
The Datasensing S5-5-B3-32 - G5210732 - S5 Tubular Photoelectric Sensors deliver reliable industrial sensing with a compact Ø18x77mm form factor. These sensors feature NPN/PNP output with dark/light selection, a 1ms response time, and operate within 10–30VDC. Their diffuse reflection principle provides a nominal sensing distance of 3m, suitable for medium-range applications up to 600mm.
The documented configuration includes Response time: 1; Nominal sensing distance: 3m; Emission: LED Red.
The documented configuration includes Output type: NPN/PNP - Dark/Light sel.; Operating Voltage: 10…30VDC; Output type: Response time.
The documented configuration includes Dimensions: Ø18x77; Operating Temperature: - 15°C...+ 55°C (Without freeze); Operating Temperature: 15°C...+ 55°C (Without freeze); Material: Plastic ABS / PMMA.
The documented configuration includes Function Principle: Diffuse reflection (medium distance, ≤600mm); Functions: Polarized retroreflective; Application: Function Principle.
The documented configuration includes Connections: M12 plug; Time delay before availability: ≤200ms.
| Feature | Specification |
|---|---|
| Output type | NPN/PNP - Dark/Light sel. |
| Response time | 1 |
| Operating Voltage | 10…30VDC |
| Dimensions | Ø18x77 |
| Connections | M12 plug |
| Operating Temperature | - 15°C...+ 55°C (Without freeze) |
| Operating Temperature | 15°C...+ 55°C (Without freeze) |
| Nominal sensing distance | 3m |
| Function Principle | Diffuse reflection (medium distance, ≤600mm) |
| Time delay before availability | ≤200ms |
| Material | Plastic ABS / PMMA |
| Output type | Response time |
| Functions | Polarized retroreflective |
| Emission | LED Red |
| Application | Function Principle |